期刊文献+
共找到8篇文章
< 1 >
每页显示 20 50 100
调整垫片对油气弹簧开阀压力影响的研究 被引量:1
1
作者 周长城 孟婕 《机械设计与制造》 北大核心 2008年第1期106-108,共3页
阐述了多片阀片叠加的优点,给出了油气弹簧节流阀的结构和原理,论述了调整垫片在油气弹簧中作用。根据在相同压力阀片弯曲变形量相等当量关系,对叠加阀片当量厚度进行了研究。对在有、无调整垫片两种情况下,对调整垫片对单片阀片和叠加... 阐述了多片阀片叠加的优点,给出了油气弹簧节流阀的结构和原理,论述了调整垫片在油气弹簧中作用。根据在相同压力阀片弯曲变形量相等当量关系,对叠加阀片当量厚度进行了研究。对在有、无调整垫片两种情况下,对调整垫片对单片阀片和叠加阀片开阀压力影响进行了研究,对开阀压力变化量和变化率与调整垫片厚度关系进行了分析。最后通过实例对调整垫片厚度对开阀压力、压力变化和压力变化率影响进行了分析验证,并对设计油气弹簧进行了阻力特性试验。通过分析和试验可知,调整垫片可以调节油气弹簧开阀压力,更好地满足对油气弹簧阻尼特性设计要求,对油气弹簧设计、特性分析具有重要参考价值。 展开更多
关键词 油气弹簧 调整垫片 开阀压力
下载PDF
油气弹簧多片叠加节流阀片与开阀压力研究 被引量:1
2
作者 赵以强 周长城 赵雷雷 《农业装备与车辆工程》 2009年第10期7-10,共4页
阐述了多片叠加节流阀片的优点,给出了油气弹簧节流阀的结构和原理。根据在相同压力下节流阀片弯曲变形量相等的当量关系,建立了n片叠加节流阀片的当量厚度计算公式。利用该公式,对n片或n组叠加节流阀片与压力之间的关系进行了分析,对... 阐述了多片叠加节流阀片的优点,给出了油气弹簧节流阀的结构和原理。根据在相同压力下节流阀片弯曲变形量相等的当量关系,建立了n片叠加节流阀片的当量厚度计算公式。利用该公式,对n片或n组叠加节流阀片与压力之间的关系进行了分析,对油气弹簧压力相对于叠加阀片厚度的变化率进行了研究,并且对如何由开阀压力设计叠加节流阀片进行了探讨。最后通过实例,对某油气弹簧的叠加节流阀片进行设计和分析,并对阻力特性进行试验。 展开更多
关键词 车辆 油气弹簧 叠加 开阀压力
下载PDF
阀控密封电池(ARLA)安全阀(胶帽)开闭阀压力测试方法探讨
3
作者 王杜友 《电动自行车》 2013年第7期38-39,共2页
文章介绍了胶帽开、闭阀全压测试的传统方法,针对传统方法的不足,提出了新型的测试方法。
关键词 控密封电池 安全(胶帽) 、闭压力 测试方法 电池性能
下载PDF
安全阀与阀控铅酸蓄电池 被引量:3
4
作者 唐槿 《电池》 CAS CSCD 北大核心 1999年第2期81-84,共4页
讨论了安全阀在闹控铅酸蓄电池中的作用和确定开阀压力应考虑的因素。简要地介绍了各种安全阀的结构特性,以及所用弹性体的性能。
关键词 铅酸蓄电池 安全 开阀压力 控式蓄电池
下载PDF
温度对电磁阀驱动影响的计算分析 被引量:2
5
作者 施颖 潘艺园 《机电信息》 2022年第20期48-51,共4页
基于磁动势、电磁力、绕组电阻率计算公式,推导出温度对磁动势和电磁力的直接关联公式,分析温度对线圈磁动势、电磁阀电磁力和开阀压力差的影响。以具体示例计算得出在线圈温度从20℃升高至120℃时,磁动势、电磁力、开阀压力差下降的具... 基于磁动势、电磁力、绕组电阻率计算公式,推导出温度对磁动势和电磁力的直接关联公式,分析温度对线圈磁动势、电磁阀电磁力和开阀压力差的影响。以具体示例计算得出在线圈温度从20℃升高至120℃时,磁动势、电磁力、开阀压力差下降的具体百分比,并给出常温环境中设计冗余或者在高温环境中通过补偿电压的方式增加驱动力的计算方案,确保电磁阀能够在全温度工作范围内产生足够的电磁力驱动运行。 展开更多
关键词 电磁 电磁线圈 磁动势 电磁力 开阀压力 温度
下载PDF
阀控密封铅蓄电池常见故障原因和对策
6
作者 桂长清 《通信电源技术》 2009年第S1期35-38,共4页
关键词 蓄电池组 控式密封铅蓄电池 浮充电压 表现形式 对策 极板硫酸盐化 开阀压力 胶体电池 充电电流 使用寿命
下载PDF
Structure optimization and flow field simulation of plate type high speed on-off valve 被引量:7
7
作者 WANG Xiao-jing LI Wen-jie +1 位作者 LI Chun-hui PENG Yi-wen 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第5期1557-1571,共15页
There is a relatively complex flow state inside the high speed on-off valve,which often produces low pressure area and oil reflux in the high-speed opening and closing process of the spool,causing cavitation and vorte... There is a relatively complex flow state inside the high speed on-off valve,which often produces low pressure area and oil reflux in the high-speed opening and closing process of the spool,causing cavitation and vortex and other phenomena.These phenomena will affect the stability of the internal flow field of the plate valve and the flow characteristics of the high speed on-off valve.Aiming at the problems of small flow rate and instability of internal flow field,a new spool structure was designed.The flow field models of two-hole and three-hole plate spools with different openings were established,and software ANSYS Workbench was chosen to mesh the model.The standard k−εturbulence model was selected for numerical simulation using FLUENT software.The pressure distribution and velocity distribution under the same pressure and different opening degree were obtained.The structure and parameters of the optimization model were also obtained.The stability analysis of flow field under different pressure was carried out.The results demonstrate that the three-hole spool has a similar flow field change with the two-hole spool,but it does not create a low pressure zone,and the three-hole spool can work stably at 2 MPa or less.This method improves the appearance of low pressure area and oil backflow in the process of high speed opening and closing of spool.The stability of flow field and the flow rate of high speed switch valve are improved.Finally,the products designed in this paper are compared with existing hydraulic valve products.The results show that the three-hole plate type high speed on-off valve designed in this paper maintains the stability of the internal flow field under the condition of 200 Hz and large opening degree,and realizes the increase of flow rate. 展开更多
关键词 high speed on-off valve flow field simulation pressure and flow characteristics
下载PDF
Numerical Simulation on a Throttle Governing System with Hydraulic Butterfly Valves in a Marine Environment 被引量:2
8
作者 万会雄 方俊 黄辉 《Journal of Marine Science and Application》 2010年第4期403-409,共7页
Hydraulic butterfly valves have been widely applied in marine engineering because of their large switching torque, low pressure loss and suitability for large and medium diameter pipelines. Due to control problems res... Hydraulic butterfly valves have been widely applied in marine engineering because of their large switching torque, low pressure loss and suitability for large and medium diameter pipelines. Due to control problems resulting from switching angular speeds of the hydraulic butterfly valve, a throttle-governing control mode has been widely adopted, and detailed analysis has been carried out worldwide on the structural principle concerning speed-regulation and the load torque on the shaft while opening or closing a hydraulic butterfly valve. However relevant reports have yet been published on the change law, the error and the influencing factors of the rotational angular velocity of the hydraulic butterfly valve while opening and closing. In this article, research was based on some common specifications of a hydraulic butterfly valve with a symmetrical valve flap existing in a marine environment. The throttle governing system supplied by the accumulator to achieve the switching of the hydraulic control valve was adopted, and the mathematical models of the system were established in the actual conditions while the numerical simulations took place. The simulation results and analysis show that the rotational angular velocity and the error of the hydraulic butterfly valve while switching is influenced greatly by the drainage amount of the accumulator, resulting in pressure loss in the pipeline, the temperature of hydraulic medium and the load of the hydraulic butterfly valve. The simulation results and analysis provide a theoretical basis for the choice of the total capacity of the accumulator and pipeline diameters in a throttle governing system with a hydraulic butterfly valve.It also determines the type and specification of the hydraulic butterfly valve and the design of motion parameters of the transported fluid. 展开更多
关键词 hydraulic butterfly valve throttle governing switching angular speed load characteristics numerical simulation
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部